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Kinetic study of hydrocarbon generation of oil asphaltene from Lunnan area, Tabei uplift

机译:塔北隆起轮南地区石油沥青质生烃动力学研究

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摘要

The molecular compositions and molecular carbon isotopic compositions of gas hydrocarbons produced in the hydrocarbon generation of oil asphaltene from Lunnan area were investigated by pyrolysis of asphaltene sealed in gold tube in a limited system. The experimental results indicated that oil asphaltene from Lunnan area had relatively high generation potential of methane. However, the molecular compositions and molecular carbon isotopic compositions of gas hydrocarbons in the hydrocarbon generation of oil asphaltene exhibited different characteristics from that of gas hydrocarbons by primary cracking of kerogen and secondary cracking of oil. Based on kinetic simulation with paleo-geothermal data of oil reservoir, the methane produced by cracking of oil asphaltene was characterized by relatively light carbon isotopic compositions. This result could not explain relatively heavy carbon isotopic compositions of natural gas from Lunnan area. Pyrolysis of kerogen from source rocks under very high temperature probably made remarkable contributions to natural gas from Lunnan area.
机译:在有限的系统中,通过密封在金管中的沥青质的热解,研究了轮南地区石油沥青质的烃生成过程中产生的气态烃的分子组成和碳同位素组成。实验结果表明,轮南地区的石油沥青质具有较高的甲烷生成潜力。然而,在石油沥青质的烃生成中,气烃的分子组成和分子碳同位素组成表现出与通过烃基油的初次裂解和油的二次裂解所产生的气态烃不同的特性。基于油藏古地热数据的动力学模拟,油沥青质裂解产生的甲烷具有相对较轻的碳同位素组成。该结果不能解释伦南地区天然气相对较重的碳同位素组成。在极高的温度下,源岩中的干酪根的热解作用可能为轮南地区的天然气做出了重大贡献。

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